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Electrochemical transformation of trichloroethylene in aqueous solution by electrode polarity reversal

机译:电极极性反转对三氯乙烯在水溶液中的电化学转化

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摘要

Electrode polarity reversal is evaluated for electrochemical transformation of trichloroethylene (TCE) in aqueous solution using flow-through reactors with mixed metal oxide electrodes and Pd catalyst. The study tests the hypothesis that optimizing electrode polarity reversal will generate H2O2 in Pd presence in the system. The effect of polarity reversal frequency, duration of the polarity reversal intervals, current intensity and TCE concentration on TCE removal rate and removal mechanism were evaluated. TCE removal efficiencies under 6 cycles h−1 were similar in the presence of Pd catalyst (50.3%) and without Pd catalyst (49.8%), indicating that Pd has limited impact on TCE degradation under these conditions. The overall removal efficacies after 60 min treatment under polarity reversal frequencies of 6, 10, 15, 30 and 90 cycles h−1 were 50.3%, 56.3%, 69.3%, 34.7% and 23.4%, respectively. Increasing the frequency of polarity reversal increases TCE removal as long as sufficient charge is produced during each cycle for the reaction at the electrode. Electrode polarity reversal shifts oxidation/reduction and reduction/oxidation sequences in the system. The optimized polarity reversal frequency (15 cycles h−1 at 60 mA) enables two reaction zones formation where reduction/oxidation occurs at each electrode surface.
机译:使用带有混合金属氧化物电极和Pd催化剂的流通式反应器,评估了电极的极性反转,以进行水溶液中三氯乙烯(TCE)的电化学转化。该研究测试了以下假设:优化电极极性反转会在系统中存在Pd时生成H2O2。评估了极性反转频率,极性反转间隔的持续时间,电流强度和TCE浓度对TCE去除速率和去除机理的影响。在有Pd催化剂存在下(50.3%)和没有Pd催化剂存在下(49.8%),在6个循环h -1 下的TCE去除效率是相似的,表明在这些条件下Pd对TCE降解的影响有限。在极性反转频率分别为6、10、15、30和90个循环h -1 的60分钟处理后,总去除效率分别为50.3%,56.3%,69.3%,34.7%和23.4% 。只要在每个循环中为电极上的反应产生足够的电荷,增加极性反转的频率都会增加TCE的去除。电极极性反转可改变系统中的氧化/还原和还原/氧化顺序。优化的极性反转频率(在60 mA下15个周期h -1 )可形成两个反应区,在每个电极表面发生还原/氧化。

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